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Metallographic and Microstructure Analysis of Gas Tungsten Arc-Welded Bimetallic Copper-to-Stainless Steel Joints

机译:气体钨弧焊双金属铜 - 不锈钢关节金相和微观结构分析

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摘要

The steel-copper dissimilar material joining is obtained by gas tungsten arc welding process at different current levels. High Ni-based filler material is used due to its compositional solubility into both Cu and SS aiming to achieve better joint consolidation. The joint is examined on the scale of tensile test, microstructural analysis, microhardness, scanning electron microscopy, and energy-dispersive x-ray spectroscopy. The highest tensile strength of 179 MPa at 150 A current is obtained. On the other hand, defect-free joint of steel-copper at all the parametric conditions is achieved. The post-tensile fracture surface morphology showed a dimple-like structure; the microhardness levels are in the range of 103-228 Hv for fusion zone. The joint assessment indicated successful dissimilar material joining. However, the unmixed zone and partially melted region are identified near the SS/weld metal interface. The mentioned zones are the function of current levels, whereas the tensile property reported marginal variation in the values with the change in current levels. Moreover, defect-free sound joints can be obtained at exploited current levels.
机译:钢 - 铜异种材料连接是通过不同电流水平的气体钨弧焊过程获得的。由于其成分溶解度进入Cu和SS的组成溶解度,用于旨在实现更好的关节整合,使用高Ni基填料材料。在拉伸试验,微观结构分析,显微硬度,扫描电子显微镜和能量分散X射线光谱的规模上检查接头。获得150个电流的最高拉伸强度为179MPa。另一方面,实现了所有参数条件的钢铜的无缺陷关节。后拉伸断裂表面形态显示凹陷的结构;微硬度水平为融合区的103-228HV。联合评估表明加入成功的不同材料。然而,在SS /焊接金属界面附近识别未混合区域和部分熔化区域。所提到的区域是电流水平的函数,而拉伸性能报告了随着电流水平的变化的值的边缘变化。此外,可以在利用电流水平处获得无缺陷的声音关节。

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